Slomka Bridget, Duan Suzann, Knapp Thomas G, Lima Natzem, Sontz Ricky, Merchant Juanita L, Sawyer Travis W
Department of Biomedical Engineering, College of Engineering, University of Arizona, Tucson, AZ, United States.
Department of Medicine, College of Medicine Tucson, University of Arizona, Tucson, AZ, United States.
Front Photon. 2023;3. doi: 10.3389/fphot.2022.1067651. Epub 2023 Jan 5.
Gastrointestinal cancers continue to account for a disproportionately large percentage of annual cancer deaths in the US. Advancements in miniature imaging technology combined with a need for precise and thorough tumor detection in gastrointestinal cancer screenings fuel the demand for new, small-scale, and low-cost methods of localization and margin identification with improved accuracy. Here, we report the development of a miniaturized, chip-on-tip, multispectral, fluorescence imaging probe designed to port through a gastroscope working channel with the aim of detecting cancerous lesions in point-of-care endoscopy of the gastrointestinal lumen. Preclinical testing has confirmed fluorescence sensitivity and supports that this miniature probe can locate structures of interest via detection of fluorescence emission from exogenous contrast agents. This work demonstrates the design and preliminary performance evaluation of a miniaturized, single-use, chip-on-tip fluorescence imaging system, capable of detecting multiple fluorochromes, and devised for deployment via the accessory channel of a standard gastroscope.
在美国,胃肠道癌症在每年癌症死亡病例中所占比例一直过高。微型成像技术的进步,以及胃肠道癌筛查中对精确、全面肿瘤检测的需求,推动了对新型、小型且低成本的定位和切缘识别方法的需求,这些方法需具备更高的准确性。在此,我们报告了一种微型化的、芯片式尖端多光谱荧光成像探针的研发情况,该探针旨在通过胃镜工作通道,用于在胃肠道管腔的即时护理内镜检查中检测癌性病变。临床前测试已证实了其荧光敏感性,并支持该微型探针能够通过检测外源性造影剂的荧光发射来定位感兴趣的结构。这项工作展示了一种微型化、一次性使用、芯片式尖端荧光成像系统的设计和初步性能评估,该系统能够检测多种荧光染料,并设计用于通过标准胃镜的附件通道进行部署。